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TERRESTRIAL PERSPECTIVE ON AUTHIGENIC CLAY MINERAL PRODUCTION IN ANCIENT MARTIAN LAKES

机译:陆生古代人为湖泊中的人为粘土矿产

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摘要

The discovery of phyllosilicates in terrains of Noachian age (>3.5 Ga) on Mars implies a period in the planet's history that was characterized by wetter, warmer conditions that may have been more hospitable for life than the cold and dry conditions prevalent today. More specific information about the original locations and mechanisms of clay mineral formation on Mars is not as well constrained, however, in part because the origin of particular clay minerals is often non-unique. For example, Fe and Mg smectite-bearing deposits on Mars may have formed in various environments, including the weathering profiles of basic volcanic rocks, impact-induced hydrothermal sites, or in bodies of standing water. The identification of lacustrine deposits on Mars is of great interest due to their potential for the preservation of organic material, but identifying any given suite of sedimentary rocks as such is difficult when limited to mineralogy and morphology derived from orbital data. Here, the processes and conditions leading to clay mineral formation in lakes and evaporative marine basins on Earth are reviewed, with a focus on the spatial and stratigraphic distribution of clays in these settings. The goal is to provide criteria to determine if certain Martian clay deposits are consistent with such an origin, which in turn will aid in the identification of possible ancient habitable environments on Mars.
机译:在火星的Noachian时代(> 3.5 Ga)的地形中发现了层状硅酸盐,这暗示着地球历史上一个时期,其特征是潮湿,温暖的气候条件可能比当今普遍的寒冷和干燥条件更适合生活。然而,关于火星上黏土矿物形成的原始位置和机理的更具体的信息并没有受到太多限制,部分原因是特定黏土矿物的来源通常是不唯一的。例如,火星上含铁和镁蒙脱石的沉积物可能已经在各种环境中形成,包括基本火山岩的风化剖面,碰撞诱发的热液场或死水体。由于火星上的湖相沉积物具有保存有机物的潜力,因此引起人们的极大兴趣,但是当仅限于从轨道数据得出的矿物学和形态时,很难确定任何给定的沉积岩组。在此,回顾了导致地球上湖泊和蒸发海洋盆地中粘土矿物形成的过程和条件,重点是这些环境中粘土的空间和地层分布。目的是提供标准,以确定某些火星粘土沉积是否与这样的起源相一致,这反过来将有助于识别火星上可能的古代宜居环境。

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